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EP1348619A2 - External electric drive propulsion unit for a SWATH vessel - Google Patents

External electric drive propulsion unit for a SWATH vessel Download PDF

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Publication number
EP1348619A2
EP1348619A2 EP03076976A EP03076976A EP1348619A2 EP 1348619 A2 EP1348619 A2 EP 1348619A2 EP 03076976 A EP03076976 A EP 03076976A EP 03076976 A EP03076976 A EP 03076976A EP 1348619 A2 EP1348619 A2 EP 1348619A2
Authority
EP
European Patent Office
Prior art keywords
vessel
pontoon
swath vessel
swath
propulsion unit
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP03076976A
Other languages
German (de)
French (fr)
Other versions
EP1348619A3 (en
Inventor
Michael S. Sinko
James S. Smith
John H. Chapman
Pieter Van Dine
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Electric Boat Corp
Original Assignee
Electric Boat Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Electric Boat Corp filed Critical Electric Boat Corp
Publication of EP1348619A2 publication Critical patent/EP1348619A2/en
Publication of EP1348619A3 publication Critical patent/EP1348619A3/en
Withdrawn legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H5/00Arrangements on vessels of propulsion elements directly acting on water
    • B63H5/07Arrangements on vessels of propulsion elements directly acting on water of propellers
    • B63H5/14Arrangements on vessels of propulsion elements directly acting on water of propellers characterised by being mounted in non-rotating ducts or rings, e.g. adjustable for steering purpose
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B1/00Hydrodynamic or hydrostatic features of hulls or of hydrofoils
    • B63B1/02Hydrodynamic or hydrostatic features of hulls or of hydrofoils deriving lift mainly from water displacement
    • B63B1/10Hydrodynamic or hydrostatic features of hulls or of hydrofoils deriving lift mainly from water displacement with multiple hulls
    • B63B1/107Semi-submersibles; Small waterline area multiple hull vessels and the like, e.g. SWATH
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B1/00Hydrodynamic or hydrostatic features of hulls or of hydrofoils
    • B63B1/32Other means for varying the inherent hydrodynamic characteristics of hulls
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H11/00Marine propulsion by water jets
    • B63H11/01Marine propulsion by water jets having means to prevent foreign material from clogging fluid passage way
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H11/00Marine propulsion by water jets
    • B63H11/02Marine propulsion by water jets the propulsive medium being ambient water
    • B63H11/04Marine propulsion by water jets the propulsive medium being ambient water by means of pumps
    • B63H11/08Marine propulsion by water jets the propulsive medium being ambient water by means of pumps of rotary type
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H21/00Use of propulsion power plant or units on vessels
    • B63H21/12Use of propulsion power plant or units on vessels the vessels being motor-driven
    • B63H21/17Use of propulsion power plant or units on vessels the vessels being motor-driven by electric motor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H21/00Use of propulsion power plant or units on vessels
    • B63H21/30Mounting of propulsion plant or unit, e.g. for anti-vibration purposes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H23/00Transmitting power from propulsion power plant to propulsive elements
    • B63H23/22Transmitting power from propulsion power plant to propulsive elements with non-mechanical gearing
    • B63H23/24Transmitting power from propulsion power plant to propulsive elements with non-mechanical gearing electric
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H11/00Marine propulsion by water jets
    • B63H11/02Marine propulsion by water jets the propulsive medium being ambient water
    • B63H11/04Marine propulsion by water jets the propulsive medium being ambient water by means of pumps
    • B63H11/08Marine propulsion by water jets the propulsive medium being ambient water by means of pumps of rotary type
    • B63H2011/081Marine propulsion by water jets the propulsive medium being ambient water by means of pumps of rotary type with axial flow, i.e. the axis of rotation being parallel to the flow direction
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63HMARINE PROPULSION OR STEERING
    • B63H23/00Transmitting power from propulsion power plant to propulsive elements
    • B63H2023/005Transmitting power from propulsion power plant to propulsive elements using a drive acting on the periphery of a rotating propulsive element, e.g. on a dented circumferential ring on a propeller, or a propeller acting as rotor of an electric motor
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T70/00Maritime or waterways transport
    • Y02T70/10Measures concerning design or construction of watercraft hulls

Definitions

  • This invention relates to propulsion arrangements for Small Waterplane Area Twin Hull (SWATH) vessels.
  • SWATH Small Waterplane Area Twin Hull
  • Conventional propulsion arrangements for SWATH vessels are generally shaft-driven propeller systems receiving power from electric or other power sources located inside the vessel by Way of shafts which extend through the hull of the vessel.
  • the drive shaft for such systems usually passes through the vessel's hull at a rake angle in order to facilitate the layout of the vessel's propulsion plant equipment due to the typical hull geometry.
  • Such angled shafting reduces propeller efficiency and often causes the propeller to protrude far beyond the hull of the ship making it susceptible to blade hits. Maintenance work to repair resulting bent or broken propeller blading or shafting is costly and requires dry dock facilities.
  • the Hall et al. Patent No. 5,301,624 discloses a SWATH vessel having a propeller at the rear of each pontoon which is driven by a shaft connected to an engine within the SWATH vessel.
  • the Walters Patent No. 4,936,237 discloses a dual hull vessel having a propeller housing mounted at the rear ofeach hull containing a propcller driven by a shaft extending into the hull.
  • the Veronesi et al. Patent No. 5,252,875 discloses a pod-type shrouded propeller arranged to be affixed to the outside of a hull.
  • the Patent to Pierro No. 3,708,251 shows a similar pod arrangement for a shrouded propeller.
  • a submersible electric propulsion motor is described in which the propeller is integrated with a motor rotor.
  • the Rieben Patent No.5,679,037 shows a water craft having propeller housing portions on each side of the hull containing a stationary screw induction structure leading from an inlet to a propeller at the rear of the housing.
  • a propulsor for marine vessels contains a rotor which is journaled in the hull of the vessel and has blades which extend outside the vessel's hull and are surrounded by a shroud to protect the blades.
  • the rotor blades which project from the hull are driven by an electric motor mounted inside the hull.
  • Stationary blades are positioned ahead of and following the rotating blades.
  • Another object of the invention is to provide an external electric drive propulsion arrangement for SWATH vessels having improved efficiency and greater convenience for repair and replacement
  • a SWATH vessel having elongated pontoons with a propulsion module arrangement mounted externally at the rear of each pontoon having an internal passage and containing a folly enclosed permanent magnet motor driving a row of rotary blades to propel water through the internal passage from an inlet duct at the forward end of the module.
  • the inlet duct is arranged to draw in a large proportion of the pontoon's boundary layer so as to avoid flow separation and maximize propulsive efficiency.
  • Each propulsion unit is removably mounted and is preferably accessible through the stern of the module or through side access panels. To facilitate maneuverability flow reversing clamshells or thrust vectoring nozzles may be added to the propulsion module.
  • a SWATH vessel having a propulsion unit arranged on each hull characterised in that said propulsion unit comprises an inlet means for drawing fluid through said inlet to be used to propel said body, wherein said inlet is disposed along a substantial portion of the area of said body where boundary layer separation would otherwise occur at a predetermined speed.
  • each of said hulls comprises a pontoon said propulsion unit removably attached to an aft end of said pontoon.
  • said propulsion unit comprises a drive mechanism and rotatable blades for propelling the SWATH vessel.
  • said drive mechanism comprising a rim drive electric motor.
  • said propulsion unit further comprises a row of stationary blades arranged in a longitudinal passage and surrounded by a cowl member, said cowl member having a forward end at which an inlet opening is arranged for drawing a boundary layer of water extending along the surface of said pontoon into said longitudinal passage.
  • the inlet opening extends circumferentially around the forward end of the cowl member so as to receive a boundary layer of water extending entirely around the pontoon to which the propulsion module is removably attached.
  • the SWATH vessel further comprises a plurality of vanes adjacent to the inlet opening positioned to block ingestion of objects into the longitudinal passage in the propulsion module.
  • the SWATH vessel further comprises a removable access panel permitting access to the interior of the propulsion module.
  • the SWATH vessel further comprises electrical power connectors to provide a sealed electrical connection between the propulsion module and the pontoon for supplying electric power to the rim drive electric motor.
  • the forward end of the cowl member has an external diameter and the pontoon has an external diameter which diameters are substantially the same.
  • the SWATH vessel comprises one drive mechanism for each pontoon.
  • the present invention also provides a propulsion module of the SWATH vessel of the present invention.
  • the present invention also provides a SWATH vessel wherein each of the hulls comprises a pontoon having a drive mechanism and rotatable blades for propelling the SWATH vessel characterised in that the drive mechanism and the rotatable blades form a propulsion module, the propulsion module removably attached to an aft end of the pontoon, the drive mechanism comprising a rim drive electric motor and the propulsion module having the rotatable blades and a row of stationary blades arranged in a longitudinal passage and surrounded by a cowl member, the cowl member having a forward end at which an inlet opening is arranged for drawing a boundary layer of water extending along the surface of the pontoon into the longitudinal passage.
  • SWATHS vessel 10 has two pontoons 12 from which a vessel superstructure portion 14 is supported by vertical struts 16 so that only the pontoons 12 and lower portions of the supporting struts 16 are below the water line and the superstructure 14 is spaced a sufficient distance from the water line to normally avoid contact with the surface of the water.
  • the pontoons 12 have substantially the same length as that of the vessel and are laterally spaced substantially the full width of the vessel to provide good stability when the vessel is under way.
  • propellers projecting from the rear of each pontoon are connected by a drive shaft to propulsion motors which are located either within the body of the pontoon or in the superstructure of the vessel and connected through a drive linkage to the drive shaft.
  • the SWATH vessel 10 has an integrated embedded external electric drive propulsion module 18 removably mounted at the aft end of each of the pontoons 12.
  • Each propulsion module 18 has a cowl 20 surrounding an internal passage 22 in the body of the module.
  • An array of rotatable blades 24 in the passage 22 is arranged to rotate so as to drive water through the passage and is followed by a stationary row of blades 26 to straighten the flow of water driven by the rotating blades 24.
  • the rotating blades are driven by a rim drive motor of the type described, for example, in the copending Eaves et al. Application Serial No. 09/004,433 filed in January 8, 1998 (EP-A-0928738).
  • an adjacent region 28 of the outer surface of the pontoon is tapered inwardly to draw the boundary layer of water flowing along the pontoon's outer surface into the internal passage 22 in the module without causing flow separation in the manner described, for example, in the copending Chapman Application Serial No. 08/883,031 filed June 26, 1997, (EP-A-0887259).
  • a circular array of stationery vanes 30 Disposed within the opening formed between the inwardly tapered region 28 of the pontoon and the forward end of the cowl 20 is a circular array of stationery vanes 30 which guide and straighten the flow of water entering the passage 22 and also serve to block debris from entering the passage 20 and possibly damaging the blades 24 and 26.
  • Each propulsion module 18 is removably attached at a joint 32 at the aft end of the pontoon 12 and since the propulsion modules 18 have entirely self-contained drive motors, no shaft opening is required at the joint 32 between the pontoon 12 and the propulsion module 18. Consequently, the joint 32 provides a watertight closure for the pontoon and only electrical connectors between the module 18 and the pontoon 12 are required to supply the power necessary for the propulsion module. Moreover, the modules 18 have removable access panels 34 to facilitate access to the interior of the module for repair.
  • each propulsion module 18 can be accessed or removed from the SWATH vessel quickly and conveniently for repair or replacement without requiring any drydock facility. Moreover, no propeller blades project beyond the protective covering formed by the cowl 20 so that blade hits cannot occur to cause damage to the propulsion unit Furthermore, even if the propulsion module 18 is struck so as to be damaged that will not result in damage to the pontoon 12 or the vessel 10 because there is no shaft extending into the pontoon and repair can be effected easily by removing the damaged propulsion module 18 from the pontoon without requiring any access to the interior of the pontoon or the vessel or any drydock facility.
  • the propulsion modules 18 can be designed to provide hydraulically operated side vent ducts which can be opened selectively to direct propulsive thrust to one side or the other to increase maneuverability of the vessel.
  • propulsion modules can be provided with flow-reversing clamshells or the like to reduce stopping distances.
  • the bow shape of pontoon 12 and struts 14 can be designed so as to cause the period of the bow wave produced by motion of the pontoon through the water to have its peak crest as the wave passes the propulsion module inlet, thereby improving the cavitation performance of the propulsion module.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • Ocean & Marine Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Structures Of Non-Positive Displacement Pumps (AREA)
  • Other Liquid Machine Or Engine Such As Wave Power Use (AREA)

Abstract

A SWATH vessel having a propulsion unit arranged on each hull (12) characterised in that said propulsion unit (18) comprises an means (24) for drawing fluid through said inlet (28) to propel said SWATH vessel, wherein said inlet is disposed along a substantial portion of the area of said body where boundary layer separation would otherwise occur at a predetermined speed.

Description

    BACKGROUND OF THE INVENTION
  • This invention relates to propulsion arrangements for Small Waterplane Area Twin Hull (SWATH) vessels.
  • Conventional propulsion arrangements for SWATH vessels are generally shaft-driven propeller systems receiving power from electric or other power sources located inside the vessel by Way of shafts which extend through the hull of the vessel. The drive shaft for such systems usually passes through the vessel's hull at a rake angle in order to facilitate the layout of the vessel's propulsion plant equipment due to the typical hull geometry. Such angled shafting reduces propeller efficiency and often causes the propeller to protrude far beyond the hull of the ship making it susceptible to blade hits. Maintenance work to repair resulting bent or broken propeller blading or shafting is costly and requires dry dock facilities. In addition, severe blade hits can cause shaft or drive train damage which would require cuts into the hull or extensive engine room disassembly to repair and could even result in the loss of the ship at sea as a result of flooding or lack of maneuverability. Pump jets have recently been used to address some of the foregoing shortcomings of conventional systems. However, they do not address all of the shortcomings, nor do they offer any potential for improved overall efficiency.
  • The Hall et al. Patent No. 5,301,624 discloses a SWATH vessel having a propeller at the rear of each pontoon which is driven by a shaft connected to an engine within the SWATH vessel. The Walters Patent No. 4,936,237 discloses a dual hull vessel having a propeller housing mounted at the rear ofeach hull containing a propcller driven by a shaft extending into the hull.
  • The Veronesi et al. Patent No. 5,252,875 discloses a pod-type shrouded propeller arranged to be affixed to the outside of a hull. The Patent to Pierro No. 3,708,251 shows a similar pod arrangement for a shrouded propeller. In the Taylor oral. Patent No. 4,831,297 a submersible electric propulsion motor is described in which the propeller is integrated with a motor rotor.
  • The Rieben Patent No.5,679,037 shows a water craft having propeller housing portions on each side of the hull containing a stationary screw induction structure leading from an inlet to a propeller at the rear of the housing. According to the Garis, Jr. Patent No. 5,078,628, a propulsor for marine vessels contains a rotor which is journaled in the hull of the vessel and has blades which extend outside the vessel's hull and are surrounded by a shroud to protect the blades. The rotor blades which project from the hull are driven by an electric motor mounted inside the hull. Stationary blades are positioned ahead of and following the rotating blades.
  • SUMMARY OF THE INVENTION
  • Accordingly, it is an object of the present invention to provide an integrated external electric drive propulsion arrangement for SWATH vessels which overcomes disadvantages of the prior art.
  • Another object of the invention is to provide an external electric drive propulsion arrangement for SWATH vessels having improved efficiency and greater convenience for repair and replacement
  • These and other objects of the invention are obtained by providing a SWATH vessel having elongated pontoons with a propulsion module arrangement mounted externally at the rear of each pontoon having an internal passage and containing a folly enclosed permanent magnet motor driving a row of rotary blades to propel water through the internal passage from an inlet duct at the forward end of the module. The inlet duct is arranged to draw in a large proportion of the pontoon's boundary layer so as to avoid flow separation and maximize propulsive efficiency. Each propulsion unit is removably mounted and is preferably accessible through the stern of the module or through side access panels. To facilitate maneuverability flow reversing clamshells or thrust vectoring nozzles may be added to the propulsion module.
  • According to the present invention, there is provided A SWATH vessel having a propulsion unit arranged on each hull characterised in that said propulsion unit comprises an inlet means for drawing fluid through said inlet to be used to propel said body, wherein said inlet is disposed along a substantial portion of the area of said body where boundary layer separation would otherwise occur at a predetermined speed.
  • Preferably, each of said hulls comprises a pontoon said propulsion unit removably attached to an aft end of said pontoon.
  • Advantageously, said propulsion unit comprises a drive mechanism and rotatable blades for propelling the SWATH vessel.
  • Preferably, said drive mechanism comprising a rim drive electric motor.
  • Advantageously, said propulsion unit further comprises a row of stationary blades arranged in a longitudinal passage and surrounded by a cowl member, said cowl member having a forward end at which an inlet opening is arranged for drawing a boundary layer of water extending along the surface of said pontoon into said longitudinal passage.
  • Preferably, the inlet opening extends circumferentially around the forward end of the cowl member so as to receive a boundary layer of water extending entirely around the pontoon to which the propulsion module is removably attached.
  • Advantageously, the SWATH vessel further comprises a plurality of vanes adjacent to the inlet opening positioned to block ingestion of objects into the longitudinal passage in the propulsion module.
  • Preferably, the SWATH vessel further comprises a removable access panel permitting access to the interior of the propulsion module.
  • Advantageously, the SWATH vessel further comprises electrical power connectors to provide a sealed electrical connection between the propulsion module and the pontoon for supplying electric power to the rim drive electric motor.
  • Advantageously, the forward end of the cowl member has an external diameter and the pontoon has an external diameter which diameters are substantially the same.
  • Preferably, the SWATH vessel comprises one drive mechanism for each pontoon.
  • The present invention also provides a propulsion module of the SWATH vessel of the present invention.
  • The present invention also provides a SWATH vessel wherein each of the hulls comprises a pontoon having a drive mechanism and rotatable blades for propelling the SWATH vessel characterised in that the drive mechanism and the rotatable blades form a propulsion module, the propulsion module removably attached to an aft end of the pontoon, the drive mechanism comprising a rim drive electric motor and the propulsion module having the rotatable blades and a row of stationary blades arranged in a longitudinal passage and surrounded by a cowl member, the cowl member having a forward end at which an inlet opening is arranged for drawing a boundary layer of water extending along the surface of the pontoon into the longitudinal passage.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • Further objects and advantageous of the invention will be apparent from a reading of the following description in conjunction with the accompanying drawings in which:
  • Fig. 1 is a perspective schematic view illustrating a representative embodiment of a SWATH vessel incorporating propulsion modules arranged in accordance with the invention; and
  • Fig. 2 is an enlarged fragmentary perspective view illustrating the propulsion module arrangements of Fig. 1 in greater detail.
  • DESCRIPTION OF PREFERRED EMBODIMENTS
  • In the typical embodiment of the invention shown in the drawings a small waterplane area twin hull (SWATHS vessel 10 has two pontoons 12 from which a vessel superstructure portion 14 is supported by vertical struts 16 so that only the pontoons 12 and lower portions of the supporting struts 16 are below the water line and the superstructure 14 is spaced a sufficient distance from the water line to normally avoid contact with the surface of the water. The pontoons 12 have substantially the same length as that of the vessel and are laterally spaced substantially the full width of the vessel to provide good stability when the vessel is under way. In conventional SWATH vessels of the type described for example in Patent No. 5,301,624, propellers projecting from the rear of each pontoon are connected by a drive shaft to propulsion motors which are located either within the body of the pontoon or in the superstructure of the vessel and connected through a drive linkage to the drive shaft.
  • In accordance with the invention, the SWATH vessel 10 has an integrated embedded external electric drive propulsion module 18 removably mounted at the aft end of each of the pontoons 12. Each propulsion module 18 has a cowl 20 surrounding an internal passage 22 in the body of the module. An array of rotatable blades 24 in the passage 22 is arranged to rotate so as to drive water through the passage and is followed by a stationary row of blades 26 to straighten the flow of water driven by the rotating blades 24. The rotating blades are driven by a rim drive motor of the type described, for example, in the copending Eaves et al. Application Serial No. 09/004,433 filed in January 8, 1998 (EP-A-0928738).
  • At the forward end of the cowl 20, which has substantially the same diameter as the pontoon 12, an adjacent region 28 of the outer surface of the pontoon is tapered inwardly to draw the boundary layer of water flowing along the pontoon's outer surface into the internal passage 22 in the module without causing flow separation in the manner described, for example, in the copending Chapman Application Serial No. 08/883,031 filed June 26, 1997, (EP-A-0887259). Disposed within the opening formed between the inwardly tapered region 28 of the pontoon and the forward end of the cowl 20 is a circular array of stationery vanes 30 which guide and straighten the flow of water entering the passage 22 and also serve to block debris from entering the passage 20 and possibly damaging the blades 24 and 26.
  • Each propulsion module 18 is removably attached at a joint 32 at the aft end of the pontoon 12 and since the propulsion modules 18 have entirely self-contained drive motors, no shaft opening is required at the joint 32 between the pontoon 12 and the propulsion module 18. Consequently, the joint 32 provides a watertight closure for the pontoon and only electrical connectors between the module 18 and the pontoon 12 are required to supply the power necessary for the propulsion module. Moreover, the modules 18 have removable access panels 34 to facilitate access to the interior of the module for repair.
  • With this arrangement, each propulsion module 18 can be accessed or removed from the SWATH vessel quickly and conveniently for repair or replacement without requiring any drydock facility. Moreover, no propeller blades project beyond the protective covering formed by the cowl 20 so that blade hits cannot occur to cause damage to the propulsion unit Furthermore, even if the propulsion module 18 is struck so as to be damaged that will not result in damage to the pontoon 12 or the vessel 10 because there is no shaft extending into the pontoon and repair can be effected easily by removing the damaged propulsion module 18 from the pontoon without requiring any access to the interior of the pontoon or the vessel or any drydock facility.
  • If desired, the propulsion modules 18 can be designed to provide hydraulically operated side vent ducts which can be opened selectively to direct propulsive thrust to one side or the other to increase maneuverability of the vessel. Alternatively, or additionally, propulsion modules can be provided with flow-reversing clamshells or the like to reduce stopping distances. In addition, the bow shape of pontoon 12 and struts 14 can be designed so as to cause the period of the bow wave produced by motion of the pontoon through the water to have its peak crest as the wave passes the propulsion module inlet, thereby improving the cavitation performance of the propulsion module.
  • Although the invention has been described herein with reference to specific embodiments, many modifications and variations therein will readily occur to those skilled in the art Accordingly, all such variations and modifications are included within the intended scope of the invention.

Claims (10)

  1. A SWATH vessel having a propulsion unit arranged on each hull (12) characterised in that said propulsion unit (18) comprises means (24) for drawing fluid through said inlet (28) to propel said SWATH vessel, wherein said inlet is disposed along a substantial portion of the area of said body where boundary layer separation would otherwise occur at a predetermined speed.
  2. A SWATH vessel as claimed in Claim 1, wherein each of said hulls comprises a pontoon (12) said propulsion unit removably attached to an aft end of said pontoon (12).
  3. A SWATH vessel as claimed in Claim 1 or 2, wherein said propulsion unit comprises a drive mechanism and rotatable blades (24) for propelling the SWATH vessel.
  4. A SWATH vessel as claimed in Claim 3, wherein said drive mechanism comprising a rim drive electric motor.
  5. A SWATH vessel as claimed in any preceding claim, wherein said propulsion unit further comprises a row of stationary blades (26) arranged in a longitudinal passage (22) and surrounded by a cowl member (20), said cowl member (20) having a forward end at which an inlet opening (28) is arranged for drawing a boundary layer of water extending along the surface of said pontoon (12) into said longitudinal passage (20).
  6. A SWATH vessel as claimed in Claim 5, wherein said inlet opening (28) extends circumferentially around the forward end of said cowl member (20) so as to receive a boundary layer of water extending entirely around said pontoon (12) to which said propulsion module (18) is removably attached.
  7. A SWATH vessel as claimed in Claim 5 or 6, further comprising a plurality of vanes (30) adjacent to said inlet opening (28) positioned to block ingestion of objects into said longitudinal passage in said propulsion module (18) .
  8. A SWATH vessel as claimed in any preceding claim, further comprising a removable access panel (34) permitting access to the interior of said propulsion unit (18).
  9. A SWATH vessel as claimed in any preceding claim, further comprising electrical power connectors to provide a sealed electrical connection between said propulsion module (18) and said pontoon (12) for supplying electric power to said rim drive electric motor.
  10. A SWATH vessel as claimed in Claim 6 or any claim dependent thereon, wherein said forward end of said cowl member (20) has an external diameter and said pontoon has an external diameter which diameters are substantially the same.
EP03076976A 1999-05-03 2000-03-23 External electric drive propulsion unit for a SWATH vessel Withdrawn EP1348619A3 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
US09/303,922 US6152791A (en) 1999-05-03 1999-05-03 External electric drive propulsion module arrangement for swath vessels
US303922 1999-05-03
EP00201072A EP1050454A3 (en) 1999-05-03 2000-03-23 External electric drive propulsion module arrangement for SWATH vessels

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
EP00201072A Division EP1050454A3 (en) 1999-05-03 2000-03-23 External electric drive propulsion module arrangement for SWATH vessels

Publications (2)

Publication Number Publication Date
EP1348619A2 true EP1348619A2 (en) 2003-10-01
EP1348619A3 EP1348619A3 (en) 2003-10-29

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Application Number Title Priority Date Filing Date
EP03076976A Withdrawn EP1348619A3 (en) 1999-05-03 2000-03-23 External electric drive propulsion unit for a SWATH vessel
EP00201072A Withdrawn EP1050454A3 (en) 1999-05-03 2000-03-23 External electric drive propulsion module arrangement for SWATH vessels

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Application Number Title Priority Date Filing Date
EP00201072A Withdrawn EP1050454A3 (en) 1999-05-03 2000-03-23 External electric drive propulsion module arrangement for SWATH vessels

Country Status (3)

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US (1) US6152791A (en)
EP (2) EP1348619A3 (en)
JP (1) JP2000326893A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
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JP2000326893A (en) 2000-11-28
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US6152791A (en) 2000-11-28
EP1050454A2 (en) 2000-11-08

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